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首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Effect of Optimum Torque Reverse Motion on Torque and Force Generation during Root Canal Instrumentation with Crown-down and Single-length Techniques
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Effect of Optimum Torque Reverse Motion on Torque and Force Generation during Root Canal Instrumentation with Crown-down and Single-length Techniques

机译:具有冠状管道和单长技术的根管仪器仪扭矩和力产生的最佳扭矩反向运动

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Introduction: Optimum torque reverse (OTR) motion is a torque-sensitive reciprocal motion in which the motor rotates in alternating 90 degrees counterclockwise and 180 degrees clockwise rotation when the torque exceeds a predetermined value. This study aimed to examine whether OTR motion contributes to torque and force reduction during nickel-titanium rotary instrumentation with the crown-down or single-length technique. Methods: Twenty-eight simulated straight canals In resin blocks were divided into 2 groups according to the type of motion (OTR or continuous rotation). The groups were further subdivided according to the preparation technique (crown-down or single-length technique, n = 7 each). Automated root canal instrumentation was performed with a torque/force analyzing device (300 rpm, up-and-down speed of 10 mm/min) and EndoWave instruments (FKG Dentaire, La-Chaux-de-Fonds, Switzerland) to size #25/0.06 taper. Maximum torque and apical force were recorded and analyzed with analysis of variance and the Bonferroni test. Results: During the crown-down preparation phase (#35/0.08, #30/0.06, #25/0.06, and #20/0.06), OTR motion developed lower maximum torque and upward force (representing the screw-in force) than continuous rotation. During the apical preparation phase (#25/0.06), OTR motion generated significantly lower maximum clockwise and counterclockwise torque (P < .05) when the single-length technique was used and significantly lower maximum upward force regardless of the preparation technique (P < .05) compared with continuous rotation. Conclusions: Under the present experimental conditions, OTR motion reduced both torque and screw-in force during the crown-down preparation phase of the crown-down technique and during the apical preparation phase of the single-length technique.
机译:介绍:最佳扭矩反向(OTR)运动是一种扭矩敏感的往复运动,当扭矩超过预定值时,电动机在逆时针旋转90度和180度时旋转180度。本研究旨在检测OTR运动是否有助于与冠状逆转或单长度技术在镍钛旋转仪器中的扭矩和力减小。方法:根据运动类型(OTR或连续旋转),将树脂块中的二十八个模拟的直线管分成2组。根据制备技术(冠状或单长度技术,N = 7)进一步细分该组。用扭矩/力分析装置(300 rpm,上下速度为10毫米/分钟)和卵波仪器(Fkg Dentaire,La-Chaux-de-Fonds,瑞士)进行自动化根管仪器。 /0.06锥度。记录和分析最大扭矩和顶端力,分析方差和Bonferroni测试。结果:在冠下准备阶段(#35 / 0.08,#30 / 0.06,#25 / 0.06和#20/0.06),OTR运动显影了较低的最大扭矩和向上力(代表螺旋力)连续旋转。在顶端制备阶段(#25 / 0.06)期间,当使用单长度技术时,OTR运动显着降低最大的最大和逆时针扭矩(P <.05),无论制备技术如何,最大向上的向上的向上力时(P < .05)与连续旋转相比。结论:在本实验条件下,OTR运动在冠状向下技术的冠状衰减制剂期间和单长技术的顶端制备阶段期间减少了扭矩和螺纹力。

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